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THE FUTURE DEVELOPMENT OF NEW ENERGY VEHICLES AND KEY COMPONENTS

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Volume 7, Issue 4, Pp 45-48, 2025

DOI: https://doi.org/10.61784/ejst3101

Author(s)

DaiWen Lei

Affiliation(s)

School of Automotive Studies, Tongji University, Shanghai 200092, China.

Corresponding Author

DaiWen Lei

ABSTRACT

Driven by policies worldwide, new energy vehicles (NEVs) have developed rapidly in recent years, with their market share increasing annually. By analyzing the current status of NEVs at home and abroad, this paper sorts out the technologies and development directions of NEVs and their key components. From the perspective of sustainable development of NEVs, it further analyzes these core technologies, summarizes future technical routes, and promotes the healthy development of NEVs.

KEYWORDS

New energy vehicles; Key components; Future development

CITE THIS PAPER

DaiWen Lei. The future development of new energy vehicles and key components. Eurasia Journal of Science and Technology. 2025, 7(4): 45-48. DOI: https://doi.org/10.61784/ejst3101.

REFERENCES

[1] Xinhua News Agency. In 2024, the production and sales volume of new energy vehicles in China both exceeded 12 million units. 2025. http://www.xinhuanet.com/fortune/20250113/815a44be04094bb6a1c770f0cff5daaf/c.html.

[2] Chinese Government Website. In the first five months, the sales volume of new energy vehicles in China accounted for 44% of the total sales volume of new cars. 2025. https://www.gov.cn/yaowen/liebiao/202506/content_7027336.htm.

[3] CCTV News. Global electric vehicle sales are expected to exceed 20 million units in 2025, with the Chinese market showing strong growth momentum. 2025. https://auto.cctv.com/2025/05/16/ARTIBawLC7s06qqSmYDasUBT250516.shtml.

[4] Wenyuan Zhen. BYD: Megawatt flash charging opens the era of “fuel and electricity at the same speed”. Auto Review, 2025(4): 80-82.

[5] Qin Liu. Solid-State Batteries: New Hope and Challenges in NEV Batteries. Automobile and New Power, 2025, 8(3): 1-4.

[6] Baumeister J, Weise J, Hirtz E, et al. Applications of Aluminum Hybrid Foam Sandwiches in Battery Housings for Electric Vehicles.Procedia Materials Science,2014. DOI:10.1016/j.mspro.2014.07.565.

[7] Choi C H, Cho J M, Kil Y, et al. Development of Polymer Composite Battery Pack Case for an Electric Vehicle. SAE Technical Papers, 2013. DOI:10.4271/2013.01.1177.

[8] Zhanwen Mao, Wei Li, Yuqiang Liu. Application and Analysis of Composites in EV Battery Packs. Chinese Journal of Power Sources, 2016, 40(05): 977-978.

[9] Mingding Shao, Ming Yang. Lightweight Battery Enclosures. Modern Automobile, 2020(20): 93-94.

[10] Shanglin Zhang, Shouhui Wu, Ying Qin, et al. Research on Welding Technology in Lightweight Battery Pack Manufacturing. Automotive Era, 2025(11): 144-146.

[11] Yi Feng, Deliang Zhang, Xiang Gao. Development of NEV Battery Pack Housings for Multi-Objective Optimization: Safety, Lightweight, and Reliability. Chinese Journal of Automotive Engineering, 2024, 14(02): 155-167.

[12] Meng Wang. Application Analysis of In-Wheel Motor Technology in NEVs. Popular Automobile, 2025(03): 49-51.

[13] Haifeng Lu, Xiangyu Zhang. Review of High-Performance Electric Drive Technologies for NEVs Under "Dual Carbon" Goals. Journal of Xinjiang University (Natural Science Edition, Chinese & English), 2025, 42(02): 129-144.

[14] Jichen Deng, Yanhua Wang, Yaoxun Wang, et al. Research on Rule-Based Energy Management Strategy for Hybrid Vehicles. Journal of North University of China (Natural Science Edition), 2025, 46(03): 326-332.

[15] Lu Xiong, Bo Leng, Xinjie Zhang, et al. Current Status and Development Suggestions for Automotive X-by-Wire Chassis Technology. Frontier Science and Technology, 2025, 4(02): 99-114.

[16] Rongsen Jiang. Analysis of Development Trends and Challenges of Intelligent Connected Vehicles. Automobile Maintenance and Repair, 2025(09): 98-99.

[17] Xuping Cao. Application of Lightweight Materials in NEV Body Design and Crash Safety. Auto Maintenance, 2025(6): 122-124.

[18] Bo Liu, Yongxin Tang, Yi Wu, et al. Study on Lightweight Design of Integrated Mega-casting Aluminum Alloy Vehicle Body Components. Automotive Engineering, 2024, 46(12): 2154-2163.

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